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吡啶甲酸N-氧化物非谐红外光谱的实验矩阵隔离研究及基于量子力学的简正坐标分析

Experimental matrix isolation study and quantum-mechanics-based normal-coordinate analysis of the anharmonic infrared spectrum of picolinic acid N-oxide.

作者信息

Szczepaniak Krystyna, Person Willis B, Hadzi Dusan

机构信息

Department of Chemistry, University of Florida, P O Box 117200, Gainesville, Florida 32611, USA.

出版信息

J Phys Chem A. 2005 Aug 4;109(30):6710-24. doi: 10.1021/jp058089o.

DOI:10.1021/jp058089o
PMID:16834024
Abstract

This work is, according to our knowledge, the first experimental matrix isolation study of a molecular system with a very short and strong intramolecular OH...O hydrogen bond. It also includes a satisfying interpretation of its entire infrared spectrum. The interpretation relies on the calculation at the DFT/B3LYP/6-31G(d,p) level of the harmonic spectrum and of the anharmonic relaxed potential energy for the stretching motion of the hydrogen-bonded proton, used with our recently modified quantum-mechanics-based normal-coordinate analysis. An important observation about the anharmonic spectrum obtained from this procedure is that the OH stretch coordinate contributes to several normal modes, mixing extensively with other in-plane internal coordinates, in particular OH-bending and C=O-stretching. The two intense normal modes with the largest contributions from the OH-stretching coordinate to the potential energy distribution and to the intensity are located near 1700 and 1500 cm(-1). A calculated anharmonic spectrum obtained from this procedure agrees with the experimental spectrum (frequencies and intensity distribution), within the limits of the estimated uncertainties for the calculation and experiment, allowing the interpretation of the latter. The agreement for the frequencies is about 1-3%. The anharmonic spectrum calculated using the anharmonic keyword in Gaussian 03w is not in satisfactory agreement with experiment insofar as the OH-stretching mode is concerned.

摘要

据我们所知,这项工作是对具有非常短且强的分子内OH...O氢键的分子体系进行的首次实验性矩阵隔离研究。它还包括对其整个红外光谱的令人满意的解释。该解释依赖于在DFT/B3LYP/6-31G(d,p)水平上对氢键质子拉伸运动的谐波光谱和非谐松弛势能的计算,并与我们最近改进的基于量子力学的正规坐标分析一起使用。从这个过程中获得的关于非谐光谱的一个重要观察结果是,OH伸缩坐标对几个正则模式有贡献,与其他面内内部坐标广泛混合,特别是OH弯曲和C=O伸缩。OH伸缩坐标对势能分布和强度贡献最大的两个强正则模式位于1700和1500 cm(-1)附近。从这个过程中获得的计算非谐光谱与实验光谱(频率和强度分布)在计算和实验估计不确定性的范围内一致,从而可以对后者进行解释。频率的一致性约为1-3%。就OH伸缩模式而言,使用Gaussian 03w中的非谐关键词计算的非谐光谱与实验结果不太一致。

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